DocumentCode :
2027983
Title :
Performance analysis with a memory-bound Monte Carlo simulation on Xeon Phi
Author :
Schweitzer, Pierre ; Mazel, Claude ; Hill, David R. C. ; Carloganu, Cristina
Author_Institution :
LIMOS, Univ. Blaise Pascal, Aubière, France
fYear :
2015
fDate :
20-24 July 2015
Firstpage :
444
Lastpage :
452
Abstract :
Physics simulations are known to be great resources exhausters (CPU, memory). Hardware acceleration can help reduce the need for CPU time and increase the available memory bandwidth. In this paper, we present the performance gain when running a memory-bound muon Monte Carlo simulation on an Intel Xeon Phi and an Intel Xeon CPU. We show how to increase performance on the Xeon Phi without modifying the Physics software frameworks we are using for our application. We investigate distributed simulations on multicore and manycore systems and also the impact of hyper-threading on performance. We extend this to a hybrid computing model, balancing the computing burden between both the manycore and multicore processors of a computing node. Finally, we improved memory usage on the Xeon Phi by sharing Kernel Memory pages using KSM, and we show that, using this approach, we can run 16% more simulation instances.
Keywords :
Monte Carlo methods; multi-threading; multiprocessing systems; physics computing; CPU time; Intel Xeon CPU; Intel Xeon Phi; KSM; computing node; distributed simulations; hardware acceleration; hybrid computing model; hyper-threading; kernel memory page sharing; manycore processors; memory bandwidth; memory usage improvement; memory-bound muon Monte Carlo simulation; multicore processors; performance analysis; performance gain; physics software frameworks; Computational modeling; Hardware; Instruction sets; Load modeling; Monte Carlo methods; Multicore processing; Geant4; High Energy Physics; Hybrid computing; Monte Carlo; Simulation distribution; Xeon Phi; kernel memory sharing; memory-bound;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
High Performance Computing & Simulation (HPCS), 2015 International Conference on
Conference_Location :
Amsterdam
Print_ISBN :
978-1-4673-7812-3
Type :
conf
DOI :
10.1109/HPCSim.2015.7237074
Filename :
7237074
Link To Document :
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